Lipidomic Analysis Reveals Systemic Alterations in Servicemen Exposed to Repeated Occupational Low-Level Blast Waves

里弗米德脑震荡后症状调查表 医学 脑震荡 创伤性脑损伤 全身炎症 血脂谱 生理学 病态的 炎症 生物标志物 毒物控制 内科学 伤害预防 免疫学 环境卫生 精神科 生物 生物化学 胆固醇
作者
Palkin Arora,Apoorva Sharma,Richa Trivedi,Priyanka Sharma,Sankarsan Padhy,Shahnawaj Shah,Suman K Dutta,Kailash Manda,Poonam Rana
出处
期刊:Military Medicine [Oxford University Press]
被引量:1
标识
DOI:10.1093/milmed/usae268
摘要

ABSTRACT Introduction Occupational exposure to blast is a prevalent risk experienced by military personnel. While low-level exposure may not manifest immediate signs of illness, prolonged and repetitive exposure may result in neurophysiological dysfunction. Such repeated exposure to occupational blasts has been linked to structural and functional modifications in the brain, adversely affecting the performance of servicemen in the field. These neurological changes can give rise to symptoms resembling concussion and contribute to the development of post-traumatic stress disorder. Materials and Methods To understand long-term effects of blast exposure, the study was conducted to assess memory function, serum circulatory protein and lipid biomarkers, and associated concussive symptomology in servicemen. Concussion-like symptoms were assessed using the Rivermead Post-Concussion Symptoms Questionnaire (RPSQ) along with memory function using PGI memory scale. The serum protein biomarkers were quantified using a sandwich ELISA assay, and the serum lipid profile was measured using liquid chromatography-mass spectrometer. Results The findings revealed that repeated low-level blast exposure resulted in impaired memory function, accompanied by elevated levels of serum neurofilament light chain (neuroaxonal injury) and C-reactive protein. Furthermore, alterations in the lipid profile were observed, with an increase in lipid species associated with immune activation. These changes collectively point to systemic inflammation, neuronal injury, and memory dysfunction as pathological characteristics of repeated low-level blast exposure. Conclusion The results of our preliminary investigation offer valuable insights for further large-scale study and provide a guiding principle that necessitates a suitable mitigation approach to safeguard the health of personnel against blast overpressure.
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